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采用激光解吸/低温等离子体电离技术对薄层色谱板进行质谱成像分析。

Mass spectrometry imaging of thin-layer chromatography plates using laser desorption/low-temperature plasma ionisation.

机构信息

CINVESTAV Unidad Irapuato, Department of Biochemistry and Biotechnology, Mexico.

出版信息

Analyst. 2020 Jun 7;145(11):3885-3891. doi: 10.1039/d0an00446d. Epub 2020 Apr 16.

Abstract

Thin-layer chromatography (TLC) is a classic method for the separation and analysis of complex mixtures. Biological assays, chemical derivatisation and spectroscopy techniques are compatible with TLC and provide extra information about isolated compounds. However, coupling TLC to mass spectrometry is hampered by the difficulty to desorb the analytes from the silica surfaces. In this study, we used a multimodal ion source for laser desorption (LD) and low-temperature plasma (LTP) post-ionisation. Efficient desorption was reached by covering the TLC plates with activated carbon. Regions of interest can be analysed by spots, by lines or by area. We show the separation of methylxanthines from coffee, tea and cocoa preparations by TLC, with subsequent mass spectrometry imaging (MSI). Using a lateral resolution of 400 μm × 400 μm, allowed the acquisition of 21 895 spectra in 2.4 h (2.5 pixels per s). Further, we demonstrate the possibility of direct mass fragmentation studies and quantification. We mounted the system on an Open LabBot with a theoretical lateral resolution of 12.5 μm and performed the visualisation of ions of interest and the pixel-wise review of mass spectra with our free software RmsiGUI (). This non-proprietary and modular platform enables the cost-efficient adaption of the system and further development by the community.

摘要

薄层色谱(TLC)是一种经典的分离和分析复杂混合物的方法。生物测定法、化学衍生化和光谱技术与 TLC 兼容,并提供有关分离化合物的额外信息。然而,TLC 与质谱的结合受到从硅胶表面解吸分析物的困难的阻碍。在这项研究中,我们使用了一种多模式离子源进行激光解吸(LD)和低温等离子体(LTP)后离子化。通过在 TLC 板上覆盖活性炭,可以实现有效的解吸。可以通过点、线或面积来分析感兴趣的区域。我们展示了通过 TLC 分离咖啡、茶和可可制品中的甲基黄嘌呤,随后进行质谱成像(MSI)。使用 400μm×400μm 的横向分辨率,在 2.4 小时内(每秒 2.5 个像素)可以采集 21895 个光谱。此外,我们还证明了直接进行质量碎片研究和定量的可能性。我们将系统安装在 Open LabBot 上,其理论横向分辨率为 12.5μm,并使用我们的免费软件 RmsiGUI()可视化感兴趣的离子和逐个像素地审查质谱。这个非专有和模块化的平台可以使系统的成本效益得到优化,并由社区进行进一步的开发。

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